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Analysis of capacitive force acting on a cantilever tip at solid/liquid interfaces

机译:固/液界面上作用于悬臂尖端的电容力的分析

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摘要

Dielectric properties of biomolecules or biomembranes are directly related to their structures and biological activities. Capacitance force microscopy based on the cantilever deflection detection is a useful scanning probe technique that can map local dielectric constant. Here we report measurements and analysis of the capacitive force acting on a cantilever tip at solid/liquid interfaces induced by application of an alternating voltage to explore the feasibility of the measurements of local dielectric constant by the voltage modulation technique in aqueous solutions. The results presented here suggest that the local dielectric constant measurements by the conventional voltage modulation technique are basically possible even in polar liquid media. However, the cantilever deflection is not only induced by the electrostatic force, but also by the surface stress, which does not include the local dielectric information. Moreover, since the voltage applied between the tip and sample are divided by the electric double layer and the bulk polar liquid, the capacitive force acting on the apex of the tip are strongly attenuated. For these reasons, the lateral resolution in the local dielectric constant measurements is expected to be deteriorated in polar liquid media depending on the magnitude of dielectric response. Finally, we present the criteria for local dielectric constant measurements with a high lateral resolution in polar liquid media.
机译:生物分子或生物膜的介电性质与其结构和生物活性直接相关。基于悬臂偏转检测的电容力显微镜是一种有用的扫描探针技术,可以绘制局部介电常数。在这里,我们报告测量和分析作用于固体/液体界面上的悬臂尖端的电容力,该电容是通过施加交流电压而引起的,以探索通过电压调制技术在水溶液中测量局部介电常数的可行性。此处给出的结果表明,即使在极性液体介质中,通过常规电压调制技术进行的局部介电常数测量也基本可行。但是,悬臂挠曲不仅由静电力引起,而且还由表面应力引起,其中不包括局部介电信息。而且,由于施加在尖端和样品之间的电压被双电层和体极性液体分开,所以作用在尖端的顶点上的电容力被大大衰减。由于这些原因,取决于介电响应的大小,预计在极性液体介质中局部介电常数测量中的横向分辨率会降低。最后,我们提出了在极性液体介质中具有高横向分辨率的局部介电常数测量标准。

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